arXiv · 2209.06771
Quantum Spin-Wave Theory for non-collinear Spin Structures, a Review
Abstract
In this review, we trace the evolution of the quantum spin-wave theory treating non-collinear spin configurations. Non-collinear spin configurations are consequences of the frustration created by competing interactions. They include simple chiral magnets due to competing nearest-neighbor (NN) and next-NN interactions and systems with geometry frustration such as the triangular antiferromagnet and the Kagom\'e lattice. We review here spin-wave results of such systems and also systems with the Dzyaloshinskii-Moriya interaction. Accent is put on these non-collinear ground states which have to be calculated before applying any spin-wave theory to determine the spectrum of the elementary excitations from the ground states. We mostly show results obtained by the use of a Green's function method. These results include the spin-wave dispersion relation and the magnetizations, layer by layer, as functions of $T$ in 2D, 3D and thin films. Some new unpublished results are also included. Technical details and discussion on the method are shown and discussed.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Hung T. Diep. 2022-09-14. Quantum Spin-Wave Theory for non-collinear Spin Structures, a Review. https://doi.org/10.3390/sym14081716
Cite the original work for its findings. Save a collection to share your selection of sources.